4.8 Review

Digitalization of Battery Manufacturing: Current Status, Challenges, and Opportunities

Journal

ADVANCED ENERGY MATERIALS
Volume 12, Issue 17, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/aenm.202102696

Keywords

battery manufacturing; digital twin; digitalization; modelling; sensorization

Funding

  1. European Union [957213, 957189, 875247, 772873]
  2. Institut Universitaire de France

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As the demand for batteries continues to grow, digitalization of battery manufacturing is becoming a key trend for future development. Establishing digital twin models can help achieve the next generation of batteries that are safer, more affordable, and energy-dense.
As the world races to respond to the diverse and expanding demands for electrochemical energy storage solutions, lithium-ion batteries (LIBs) remain the most advanced technology in the battery ecosystem. Even as unprecedented demand for state-of-the-art batteries drives gigascale production around the world, there are increasing calls for next-generation batteries that are safer, more affordable, and energy-dense. These trends motivate the intense pursuit of battery manufacturing processes that are cost effective, scalable, and sustainable. The digital transformation of battery manufacturing plants can help meet these needs. This review provides a detailed discussion of the current and near-term developments for the digitalization of the battery cell manufacturing chain and presents future perspectives in this field. Current modelling approaches are reviewed, and a discussion is presented on how these elements can be combined with data acquisition instruments and communication protocols in a framework for building a digital twin of the battery manufacturing chain. The challenges and emerging techniques provided here is expected to give scientists and engineers from both industry and academia a guide toward more intelligent and interconnected battery manufacturing processes in the future.

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